Item Description
Software scope and attributes:
Greentech Intercontinental (Xihu (West Lake) Dis.) Co., Ltd is the specialist vacuum pump provider. 2BE1 collection water ring vacuum pumps and compressors are the items with high effectiveness and economic electrical power, which are manufactured by our organization integrating with the advanced technological innovation of the imported goods from Germany.
These series items adopt single stage and solitary action framework and have a lot of rewards, such as, compact composition, handy maintenance, dependable managing, higher efficiency and economic power.
The principal characteristics of 2BE1 collection merchandise:
All the bearings are the imported items with the brand identify of CZPT orNTN for making certain the precise orientation and the high stability during the working of the pump.
The substance of the impeller is QT400 nodular iron or stainless metal for making sure the security when the pump functions below the rigorous situation and can lengthen the life span of the pump.
The casing is created of metal or stainless metal plates to extend the life span of the 2BE1 sequence pumps.
The shaft bushing is produced of stainless metal to improve the lifetime of the pump 5 times than the regular substance.
The V-belt pulley (when the pump is driven by the belt) is utilised the higher precise pulley with taper bushing to hold the trustworthiness of the pump and extend its existence. And it is also effortless to mantle and dismantle.
The coupling is employed to travel the pump directly. The adaptable component connecting the 2 half coupling is manufactured of polyurethane that makes the pump much more reputable.
The unique style to set the separator earlier mentioned the pump saves the room and decreases the sound successfully.
All the areas are solid by the resin sands that make the pump surface area quite smooth. It is not required to go over the surface area of the pumps with putty and offers out the warmth proficiently.
The mechanical seals (optional) are used the imported merchandise to steer clear of the leakage when the pump operates for a lengthy time.
Type | Speed (Drive type) r/min |
Shaft electricity kW |
Motor power kW |
Motor sort |
Limited vacuum mbar |
Weight (Whole set) kg |
||
Suction capability | ||||||||
m 3 /h | m 3 /min | |||||||
2BE1 151- | 1450(D) 1100(V) 1300(V) 1625(V) 1750(V) |
ten.8 7.2 9.2 13.two 14.8 |
15 eleven eleven 15 eighteen.five |
Y160L-4 Y160M-4 Y160M-four Y160L-4 Y180M-4 |
33mbar (-.098MPa) |
405 three hundred 360 445 470 |
six.8 five. 6. 7.four seven.eight |
469 428 444 469 503 |
2BE1 152- | 1450(D) 1100(V) 1300(V) 1625(V) 1750(V) |
12.5 eight.three ten.5 15. seventeen.2 |
15 eleven fifteen 18.five 22 |
Y160L-4 Y160M-four Y160L-four Y180M-4 Y180L-four |
33mbar (-.098MPa) |
465 340 415 510 535 |
7.8 five.7 six.nine eight.five 8.9 |
481 437 481 515 533 |
2BE1 153- | 1450(D) 1100(V) 1300(V) 1625(V) 1750(V) |
sixteen.three ten.six 13.six 19.6 22.3 |
18.5 15 18.five 22 30 |
Y180M-four Y160L-4 Y180M-4 Y180L-4 Y200L-4 |
33mbar (-.098MPa) |
600 445 540 660 700 |
10. 7.4 nine. eleven. 11.seven |
533 480 533 551 601 |
2BE1 202- | 970(D) 790(V) 880(v) 1100(V) 1170(V) 1300(V) |
17 fourteen sixteen 22 twenty five thirty |
22 eighteen.five 18.5 30 30 37 |
Y200L2-six Y180M-four Y180M-four Y200L-four Y200L-four Y225S-four |
33mbar (-.098MPa) |
760 590 670 850 890 950 |
12.seven nine.eight 11.2 14.2 14.8 fifteen.eight |
875 850 850 940 945 995 |
2BE1 203- | 970(D) 790(V) 880(V) 1100(V) 1170(V) 1300(V) |
27 twenty 23 33 37 forty five |
37 30 thirty forty five 45 55 |
Y250M-six Y200L-4 Y200L-four Y225M-four Y225M-4 Y250M-4 |
33mbar (-.098MPa) |
1120 880 one thousand 1270 1320 1400 |
18.seven fourteen.7 16.7 21.two 22. 23.three |
1065 995 995 1080 1085 1170 |
2BE1 252- | 740(D) 558(V) 660(V) 832(V) 885(V) 938(V) |
38 26 31.eight 49 fifty four sixty |
45 30 37 55 75 75 |
Y280M-8 Y200L-four Y225S-4 Y250M-four Y280S-four Y280S-4 |
33mbar (-.098MPa) |
1700 1200 1500 1850 2000 2100 |
28.3 twenty. 25. 30.eight 33.three 35. |
1693 1460 1515 1645 1805 1805 |
2BE1 253- | 740(D) 560(V) 660(V) 740(V) 792(V) 833(V) 885(V) 938(V) |
fifty four 37 forty five 54 sixty 68 77 86 |
seventy five 45 55 seventy five 75 90 90 110 |
Y315M-eight Y225M-4 Y250M-4 Y280S-4 Y280S-4 Y280M-4 Y280M-4 Y315S-four |
33mbar (-.098MPa) |
2450 1750 2140 2450 2560 2700 2870 3571 |
forty.eight 29.two 35.seven forty.8 42.seven forty five. forty seven.eight 50.three |
2215 1695 1785 1945 1945 2055 2060 2295 |
2BE1 303- | 740(D) 590(D) 466(V) 521(V) 583(V) 657(V) 743(V) |
ninety eight 65 forty eight 54 64 78 99 |
a hundred and ten 75 55 seventy five 75 90 132 |
Y315L2-eight Y315L2-ten Y250M-4 Y280S-four Y280S-4 Y280M-4 Y315M-4 |
33mbar (-.098MPa) |
4000 3200 2500 2800 3100 3580 4000 |
sixty six.seven fifty three.3 41.7 forty six.seven fifty one.7 fifty nine.seven sixty six.seven |
3200 3200 2645 2805 2810 2925 3290 |
2BE1 305-one 2BE1 306-1 |
740(D) 590(D) 490(V) 521(V) 583(V) 657(V) 743(V) |
102 70 55 fifty nine 68 84 103 |
132 90 seventy five seventy five 90 a hundred and ten 132 |
Y355M1-eight Y355M1-ten Y280S-four Y280S-four Y280M-4 Y315S-four Y315M-4 |
160mbar (-.085MPa) |
4650 3750 3150 3320 3700 4130 4650 |
seventy seven.5 62.five 52.5 55.3 sixty one.two 68.eight seventy seven.5 |
3800 3800 2950 3000 3100 3300 3450 |
2BE1 353- | 590(D) 390(V) 415(V) 464(V) 520(V) 585(V) 620(V) 660(V) |
121 sixty five 70 81 ninety seven 121 133 152 |
a hundred and sixty 75 ninety 110 132 one hundred sixty a hundred and sixty 185 |
Y355L2-10 Y280S-four Y280M-4 Y315S-four Y315M-four Y315L1-four Y315L1-4 Y315L2-four |
33mbar (-.098MPa) |
5300 3580 3700 4100 4620 5200 5500 5850 |
88.3 fifty nine.7 sixty one.seven sixty eight.three 77. 86.7 91.7 ninety seven.5 |
4750 3560 3665 3905 4040 4100 4100 4240 |
2BE1 355-one 2BE1 356-one |
590(D) 390(V) 435(V) 464(V) 520(V) 555(V) 585(V) 620(V) |
one hundred thirty seventy five 86 ninety 102 115 130 a hundred forty five |
160 90 110 one hundred ten 132 132 160 185 |
Y355L2-10 Y280M-4 Y315S-4 Y315S-four Y315M-four Y315M-4 Y315L1-4 Y315L2-4 |
160mbar (-.085MPa) |
6200 4180 4600 4850 5450 5800 6100 6350 |
103.three sixty nine.seven seventy six.seven 80.8 90.eight 98.three 101.seven one hundred and five.8 |
5000 3920 4150 4160 4290 4300 4350 4450 |
2BE1 403- | 330(V) 372(V) 420(V) 472(V) 530(V) 565(V) |
97 one hundred ten 131 160 203 234 |
132 132 160 200 250 280 |
Y315M-4 Y315M-four Y315L1-4 Y315L2-four Y355M2-four Y355L1-four |
33mbar (-.098MPa) |
5160 5700 6470 7380 8100 8600 |
86. 95. 107.eight 123. one hundred thirty five. 143.3 |
5860 5870 5950 6190 6630 6800 |
2BE1 405-one 2BE1 406-1 |
330(V) 372(V) 420(V) 472(V) 530(V) 565(V) |
one hundred 118 140 one hundred seventy 206 235 |
132 a hundred and sixty 185 200 250 280 |
Y315M-four Y315L1-four Y315L2-four Y315L2-4 Y355M2-four Y355L1-four |
160mbar (-.085MPa) |
6000 6700 7500 8350 9450 15710 |
a hundred. 111.seven 125. 139.two 157.five 168.3 |
5980 6070 6200 6310 6750 6920 |
US $2,000 / Piece | |
1 Piece (Min. Order) |
###
Oil or Not: | Oil Free |
---|---|
Structure: | Rotary Vacuum Pump |
Exhauster Method: | Kinetic Vacuum Pump |
Vacuum Degree: | High Vacuum |
Work Function: | Pre-Suction Pump |
Working Conditions: | Wet |
###
Customization: |
Available
|
---|
###
Type | Speed (Drive type) r/min |
Shaft power kW |
Motor power kW |
Motor type |
Limited vacuum mbar |
Weight (Whole set) kg |
||
Suction capacity | ||||||||
m 3 /h | m 3 /min | |||||||
2BE1 151-0 | 1450(D) 1100(V) 1300(V) 1625(V) 1750(V) |
10.8 7.2 9.2 13.2 14.8 |
15 11 11 15 18.5 |
Y160L-4 Y160M-4 Y160M-4 Y160L-4 Y180M-4 |
33mbar (-0.098MPa) |
405 300 360 445 470 |
6.8 5.0 6.0 7.4 7.8 |
469 428 444 469 503 |
2BE1 152-0 | 1450(D) 1100(V) 1300(V) 1625(V) 1750(V) |
12.5 8.3 10.5 15.0 17.2 |
15 11 15 18.5 22 |
Y160L-4 Y160M-4 Y160L-4 Y180M-4 Y180L-4 |
33mbar (-0.098MPa) |
465 340 415 510 535 |
7.8 5.7 6.9 8.5 8.9 |
481 437 481 515 533 |
2BE1 153-0 | 1450(D) 1100(V) 1300(V) 1625(V) 1750(V) |
16.3 10.6 13.6 19.6 22.3 |
18.5 15 18.5 22 30 |
Y180M-4 Y160L-4 Y180M-4 Y180L-4 Y200L-4 |
33mbar (-0.098MPa) |
600 445 540 660 700 |
10.0 7.4 9.0 11.0 11.7 |
533 480 533 551 601 |
2BE1 202-0 | 970(D) 790(V) 880(v) 1100(V) 1170(V) 1300(V) |
17 14 16 22 25 30 |
22 18.5 18.5 30 30 37 |
Y200L2-6 Y180M-4 Y180M-4 Y200L-4 Y200L-4 Y225S-4 |
33mbar (-0.098MPa) |
760 590 670 850 890 950 |
12.7 9.8 11.2 14.2 14.8 15.8 |
875 850 850 940 945 995 |
2BE1 203-0 | 970(D) 790(V) 880(V) 1100(V) 1170(V) 1300(V) |
27 20 23 33 37 45 |
37 30 30 45 45 55 |
Y250M-6 Y200L-4 Y200L-4 Y225M-4 Y225M-4 Y250M-4 |
33mbar (-0.098MPa) |
1120 880 1000 1270 1320 1400 |
18.7 14.7 16.7 21.2 22.0 23.3 |
1065 995 995 1080 1085 1170 |
2BE1 252-0 | 740(D) 558(V) 660(V) 832(V) 885(V) 938(V) |
38 26 31.8 49 54 60 |
45 30 37 55 75 75 |
Y280M-8 Y200L-4 Y225S-4 Y250M-4 Y280S-4 Y280S-4 |
33mbar (-0.098MPa) |
1700 1200 1500 1850 2000 2100 |
28.3 20.0 25.0 30.8 33.3 35.0 |
1693 1460 1515 1645 1805 1805 |
2BE1 253-0 | 740(D) 560(V) 660(V) 740(V) 792(V) 833(V) 885(V) 938(V) |
54 37 45 54 60 68 77 86 |
75 45 55 75 75 90 90 110 |
Y315M-8 Y225M-4 Y250M-4 Y280S-4 Y280S-4 Y280M-4 Y280M-4 Y315S-4 |
33mbar (-0.098MPa) |
2450 1750 2140 2450 2560 2700 2870 3020 |
40.8 29.2 35.7 40.8 42.7 45.0 47.8 50.3 |
2215 1695 1785 1945 1945 2055 2060 2295 |
2BE1 303-0 | 740(D) 590(D) 466(V) 521(V) 583(V) 657(V) 743(V) |
98 65 48 54 64 78 99 |
110 75 55 75 75 90 132 |
Y315L2-8 Y315L2-10 Y250M-4 Y280S-4 Y280S-4 Y280M-4 Y315M-4 |
33mbar (-0.098MPa) |
4000 3200 2500 2800 3100 3580 4000 |
66.7 53.3 41.7 46.7 51.7 59.7 66.7 |
3200 3200 2645 2805 2810 2925 3290 |
2BE1 305-1 2BE1 306-1 |
740(D) 590(D) 490(V) 521(V) 583(V) 657(V) 743(V) |
102 70 55 59 68 84 103 |
132 90 75 75 90 110 132 |
Y355M1-8 Y355M1-10 Y280S-4 Y280S-4 Y280M-4 Y315S-4 Y315M-4 |
160mbar (-0.085MPa) |
4650 3750 3150 3320 3700 4130 4650 |
77.5 62.5 52.5 55.3 61.2 68.8 77.5 |
3800 3800 2950 3000 3100 3300 3450 |
2BE1 353-0 | 590(D) 390(V) 415(V) 464(V) 520(V) 585(V) 620(V) 660(V) |
121 65 70 81 97 121 133 152 |
160 75 90 110 132 160 160 185 |
Y355L2-10 Y280S-4 Y280M-4 Y315S-4 Y315M-4 Y315L1-4 Y315L1-4 Y315L2-4 |
33mbar (-0.098MPa) |
5300 3580 3700 4100 4620 5200 5500 5850 |
88.3 59.7 61.7 68.3 77.0 86.7 91.7 97.5 |
4750 3560 3665 3905 4040 4100 4100 4240 |
2BE1 355-1 2BE1 356-1 |
590(D) 390(V) 435(V) 464(V) 520(V) 555(V) 585(V) 620(V) |
130 75 86 90 102 115 130 145 |
160 90 110 110 132 132 160 185 |
Y355L2-10 Y280M-4 Y315S-4 Y315S-4 Y315M-4 Y315M-4 Y315L1-4 Y315L2-4 |
160mbar (-0.085MPa) |
6200 4180 4600 4850 5450 5800 6100 6350 |
103.3 69.7 76.7 80.8 90.8 98.3 101.7 105.8 |
5000 3920 4150 4160 4290 4300 4350 4450 |
2BE1 403-0 | 330(V) 372(V) 420(V) 472(V) 530(V) 565(V) |
97 110 131 160 203 234 |
132 132 160 200 250 280 |
Y315M-4 Y315M-4 Y315L1-4 Y315L2-4 Y355M2-4 Y355L1-4 |
33mbar (-0.098MPa) |
5160 5700 6470 7380 8100 8600 |
86.0 95.0 107.8 123.0 135.0 143.3 |
5860 5870 5950 6190 6630 6800 |
2BE1 405-1 2BE1 406-1 |
330(V) 372(V) 420(V) 472(V) 530(V) 565(V) |
100 118 140 170 206 235 |
132 160 185 200 250 280 |
Y315M-4 Y315L1-4 Y315L2-4 Y315L2-4 Y355M2-4 Y355L1-4 |
160mbar (-0.085MPa) |
6000 6700 7500 8350 9450 10100 |
100.0 111.7 125.0 139.2 157.5 168.3 |
5980 6070 6200 6310 6750 6920 |
US $2,000 / Piece | |
1 Piece (Min. Order) |
###
Oil or Not: | Oil Free |
---|---|
Structure: | Rotary Vacuum Pump |
Exhauster Method: | Kinetic Vacuum Pump |
Vacuum Degree: | High Vacuum |
Work Function: | Pre-Suction Pump |
Working Conditions: | Wet |
###
Customization: |
Available
|
---|
###
Type | Speed (Drive type) r/min |
Shaft power kW |
Motor power kW |
Motor type |
Limited vacuum mbar |
Weight (Whole set) kg |
||
Suction capacity | ||||||||
m 3 /h | m 3 /min | |||||||
2BE1 151-0 | 1450(D) 1100(V) 1300(V) 1625(V) 1750(V) |
10.8 7.2 9.2 13.2 14.8 |
15 11 11 15 18.5 |
Y160L-4 Y160M-4 Y160M-4 Y160L-4 Y180M-4 |
33mbar (-0.098MPa) |
405 300 360 445 470 |
6.8 5.0 6.0 7.4 7.8 |
469 428 444 469 503 |
2BE1 152-0 | 1450(D) 1100(V) 1300(V) 1625(V) 1750(V) |
12.5 8.3 10.5 15.0 17.2 |
15 11 15 18.5 22 |
Y160L-4 Y160M-4 Y160L-4 Y180M-4 Y180L-4 |
33mbar (-0.098MPa) |
465 340 415 510 535 |
7.8 5.7 6.9 8.5 8.9 |
481 437 481 515 533 |
2BE1 153-0 | 1450(D) 1100(V) 1300(V) 1625(V) 1750(V) |
16.3 10.6 13.6 19.6 22.3 |
18.5 15 18.5 22 30 |
Y180M-4 Y160L-4 Y180M-4 Y180L-4 Y200L-4 |
33mbar (-0.098MPa) |
600 445 540 660 700 |
10.0 7.4 9.0 11.0 11.7 |
533 480 533 551 601 |
2BE1 202-0 | 970(D) 790(V) 880(v) 1100(V) 1170(V) 1300(V) |
17 14 16 22 25 30 |
22 18.5 18.5 30 30 37 |
Y200L2-6 Y180M-4 Y180M-4 Y200L-4 Y200L-4 Y225S-4 |
33mbar (-0.098MPa) |
760 590 670 850 890 950 |
12.7 9.8 11.2 14.2 14.8 15.8 |
875 850 850 940 945 995 |
2BE1 203-0 | 970(D) 790(V) 880(V) 1100(V) 1170(V) 1300(V) |
27 20 23 33 37 45 |
37 30 30 45 45 55 |
Y250M-6 Y200L-4 Y200L-4 Y225M-4 Y225M-4 Y250M-4 |
33mbar (-0.098MPa) |
1120 880 1000 1270 1320 1400 |
18.7 14.7 16.7 21.2 22.0 23.3 |
1065 995 995 1080 1085 1170 |
2BE1 252-0 | 740(D) 558(V) 660(V) 832(V) 885(V) 938(V) |
38 26 31.8 49 54 60 |
45 30 37 55 75 75 |
Y280M-8 Y200L-4 Y225S-4 Y250M-4 Y280S-4 Y280S-4 |
33mbar (-0.098MPa) |
1700 1200 1500 1850 2000 2100 |
28.3 20.0 25.0 30.8 33.3 35.0 |
1693 1460 1515 1645 1805 1805 |
2BE1 253-0 | 740(D) 560(V) 660(V) 740(V) 792(V) 833(V) 885(V) 938(V) |
54 37 45 54 60 68 77 86 |
75 45 55 75 75 90 90 110 |
Y315M-8 Y225M-4 Y250M-4 Y280S-4 Y280S-4 Y280M-4 Y280M-4 Y315S-4 |
33mbar (-0.098MPa) |
2450 1750 2140 2450 2560 2700 2870 3020 |
40.8 29.2 35.7 40.8 42.7 45.0 47.8 50.3 |
2215 1695 1785 1945 1945 2055 2060 2295 |
2BE1 303-0 | 740(D) 590(D) 466(V) 521(V) 583(V) 657(V) 743(V) |
98 65 48 54 64 78 99 |
110 75 55 75 75 90 132 |
Y315L2-8 Y315L2-10 Y250M-4 Y280S-4 Y280S-4 Y280M-4 Y315M-4 |
33mbar (-0.098MPa) |
4000 3200 2500 2800 3100 3580 4000 |
66.7 53.3 41.7 46.7 51.7 59.7 66.7 |
3200 3200 2645 2805 2810 2925 3290 |
2BE1 305-1 2BE1 306-1 |
740(D) 590(D) 490(V) 521(V) 583(V) 657(V) 743(V) |
102 70 55 59 68 84 103 |
132 90 75 75 90 110 132 |
Y355M1-8 Y355M1-10 Y280S-4 Y280S-4 Y280M-4 Y315S-4 Y315M-4 |
160mbar (-0.085MPa) |
4650 3750 3150 3320 3700 4130 4650 |
77.5 62.5 52.5 55.3 61.2 68.8 77.5 |
3800 3800 2950 3000 3100 3300 3450 |
2BE1 353-0 | 590(D) 390(V) 415(V) 464(V) 520(V) 585(V) 620(V) 660(V) |
121 65 70 81 97 121 133 152 |
160 75 90 110 132 160 160 185 |
Y355L2-10 Y280S-4 Y280M-4 Y315S-4 Y315M-4 Y315L1-4 Y315L1-4 Y315L2-4 |
33mbar (-0.098MPa) |
5300 3580 3700 4100 4620 5200 5500 5850 |
88.3 59.7 61.7 68.3 77.0 86.7 91.7 97.5 |
4750 3560 3665 3905 4040 4100 4100 4240 |
2BE1 355-1 2BE1 356-1 |
590(D) 390(V) 435(V) 464(V) 520(V) 555(V) 585(V) 620(V) |
130 75 86 90 102 115 130 145 |
160 90 110 110 132 132 160 185 |
Y355L2-10 Y280M-4 Y315S-4 Y315S-4 Y315M-4 Y315M-4 Y315L1-4 Y315L2-4 |
160mbar (-0.085MPa) |
6200 4180 4600 4850 5450 5800 6100 6350 |
103.3 69.7 76.7 80.8 90.8 98.3 101.7 105.8 |
5000 3920 4150 4160 4290 4300 4350 4450 |
2BE1 403-0 | 330(V) 372(V) 420(V) 472(V) 530(V) 565(V) |
97 110 131 160 203 234 |
132 132 160 200 250 280 |
Y315M-4 Y315M-4 Y315L1-4 Y315L2-4 Y355M2-4 Y355L1-4 |
33mbar (-0.098MPa) |
5160 5700 6470 7380 8100 8600 |
86.0 95.0 107.8 123.0 135.0 143.3 |
5860 5870 5950 6190 6630 6800 |
2BE1 405-1 2BE1 406-1 |
330(V) 372(V) 420(V) 472(V) 530(V) 565(V) |
100 118 140 170 206 235 |
132 160 185 200 250 280 |
Y315M-4 Y315L1-4 Y315L2-4 Y315L2-4 Y355M2-4 Y355L1-4 |
160mbar (-0.085MPa) |
6000 6700 7500 8350 9450 10100 |
100.0 111.7 125.0 139.2 157.5 168.3 |
5980 6070 6200 6310 6750 6920 |
Basic knowledge of vacuum pump
A vacuum pump is used to create a relative vacuum within a sealed volume. These pumps take gas molecules out of the sealed volume and expel them, leaving a partial vacuum. They can be used in a variety of applications, including medicine and laboratory research. This article will cover the basics of vacuum pumps, including how they operate and the materials they use. You will also learn about typical applications and fees.
How it works
A vacuum pump is a pump that removes air from a specific space. These pumps are divided into three types according to their function. Positive displacement pumps are used in the low vacuum range and high vacuum pumps are used in the ultra-high vacuum range. The performance of a vacuum pump depends on the quality of the vacuum it produces.
A vacuum pump creates a partial vacuum above the surrounding atmospheric pressure. The speed of the pump is proportional to the pressure difference between the ambient atmosphere and the base pressure of the pump. Choose a base pressure for a specific process, not the lowest possible pressure in the system.
A scroll pump is also a type of vacuum pump. This type of pump consists of two scrolls, the inner scroll running around the gas volume. It then compresses the gas in a spiral fashion until it reaches the maximum pressure at its center. The inner and outer scrolls are separated by a polymer tip seal that provides an axial seal between them. Its pumping speed ranges from 5.0 to 46 m3/h.
Another type of vacuum pump is the screw pump, which uses two rotating screws in one chamber. The screw in the screw pump is a left-handed screw, and the other is a right-handed screw. The two screws do not touch each other when engaged, preventing contamination of the medium. They also feature high pumping speeds, low operating costs and low maintenance requirements.
The vacuum pump consists of several parts such as rotor and base. These components create an area of low pressure. Gas and water molecules rush into this low pressure area, where they are sucked into the pump. The pump also rotates, preventing fluid leakage to the low pressure side.
The main function of a vacuum pump is to remove gas particles from an enclosed space. It does this by changing gas molecules between high and low pressure states. A vacuum pump can also generate a partial vacuum. There are several types of vacuum pumps, each designed to perform a specific function, so it is important to choose the right type for your application.
Vacuum Pump Materials
There are two main materials used in vacuum pumps: metal and polyethylene. Metal is more durable, while polyethylene is cheaper and more flexible. However, these materials are not suitable for high pressure and may cause damage. Therefore, if you want to design a high-pressure pump, it is best to use metal materials.
Vacuum pumps are required in a variety of industrial environments and manufacturing processes. The most common vacuum pump is a positive displacement vacuum pump, which transports a gas load from the inlet to the outlet. The main disadvantage of this pump is that it can only generate a partial vacuum; higher vacuums must be achieved through other techniques.
Materials used in vacuum pumps vary from high to rough vacuum pumps. Low pressure ranges are typically below 1 x 10-3 mbar, but high vacuum pumps are used for extreme vacuum. They also differ in manufacturing tolerances, seals used, materials used and operating conditions.
The choice of vacuum pump material depends on the process. The vacuum range and ultimate pressure of the system must be carefully analyzed to find the right material for the job. Depending on the purpose of the pump, a variety of materials can be used, from ceramic to plastic substrates. When choosing a vacuum pump material, be sure to consider its durability and corrosion resistance.
Dry and wet vacuum pumps use oil to lubricate internal parts. This prevents wear of the pump due to corrosion. These types of pumps are also recommended for continuous use and are ideal for applications where the gas is acidic or corrosive. Therefore, they are widely used in the chemical and food industries. They are also used in rotary evaporation and volatile compound processing.
Positive displacement pumps are the most common type. They work by letting gas flow into a cavity and venting it into the atmosphere. Additionally, momentum transfer pumps, also known as molecular pumps, use high-velocity jets of high-density fluids to transport air and gases. These pumps are also used for medical purposes.
Typical application
Vacuum pumps are used to remove large amounts of air and water from the process. They are used in various industries to improve performance. For example, liquid ring vacuum pumps are used in packaging production to produce plastic sheets in the desired shape and size. Large-capacity suction pumps are used in the chemical industry to improve the surface properties of materials and speed up filtration.
There are two basic principles of vacuum pumps: entrapment and gas transfer. Positive displacement pumps are suitable for low to medium vacuums, while momentum transfer and retention pumps are suitable for high vacuums. Typically, high vacuum systems use two or more pumps working in series.
There are three main categories of vacuum pumps: primary, booster, and secondary. Their working pressure ranges from a few millimeters above atmospheric pressure. They also have several different technologies, including positive displacement, gas transfer, and gas capture. These pumps transport gas molecules through momentum exchange. Typically, they release gas molecules at roughly the same rate as they entered. When the process is complete, the gas molecules are slightly above atmospheric pressure. The discharge pressure is equal to the lowest pressure achieved, which is the compression ratio.
Vacuum pumps are widely used in all walks of life. They can be found in almost every industrial sector, including food processing. For example, they are used to make sausages and food products. In addition, they are used in landfill and digester compressors. They can also be used to build solar panels.
Oil lubricated vacuum pumps are currently the most energy-efficient vacuum pumps. These pumps are suitable for a variety of industrial applications including freeze drying and process engineering. These pumps use oil as a sealant and coolant, which makes them ideal for a variety of applications. These pumps are also very sensitive to vibration.
Another type of vacuum pump is a turbomolecular pump. These pumps have multiple stages and angled vanes. Unlike mechanical pumps, turbomolecular pumps sweep out larger areas at higher pumping speeds. In addition, they can generate ultra-high oil-free vacuums. Additionally, they have no moving parts, which makes them ideal for high vacuum pressures.
Vacuum Pump Cost
Annual maintenance costs for vacuum pumps range from $242 to $337. The energy consumption of the vacuum pump is also a consideration, as it consumes electricity throughout its operating cycle. For example, an electric motor for a 1 hp pump uses 0.55 kW/hr, which equates to 2,200 kWh of energy per year.
Energy cost is the largest part of the total cost of a vacuum pump. They are usually four to five times higher than the initial purchase price. Therefore, choosing a more energy efficient system can reduce the total cost of ownership and extend the payback period. For many clients, this can be millions of dollars.
A vacuum pump works by compressing gas as it enters a chamber. This pushes the gas molecules towards the exhaust. The exhaust gas is then vented to the atmosphere. A special spring-loaded vane seals the pump’s chamber, creating an airtight seal. Specially formulated oils are also used to lubricate, cool and seal rotors.
Vacuum pumps are not cheap, but they have many advantages over water suction. One of the main advantages of vacuum pumps is their flexibility and reliability. This is an industry-proven solution that has been around for years. However, the initial cost of a vacuum pump is higher than that of a water aspirator.
If the vacuum pump fails unexpectedly, replacement costs can be high. Proper maintenance can extend the life of your system and prevent unplanned downtime. However, no one can predict when a pump will fail, and if a pump does fail, the cost can far exceed the cost of buying a new pump. Therefore, investing in preventive maintenance is a wise investment.
There are many types of vacuum pumps, not all of which are suitable for the same type of application. Make sure to choose a pump with the power required for the job. It should also be able to handle a variety of samples.
editor by czh 2023-01-13