Extremely high vacuum level
Through the integration of imported technology, the 2BE1 has an extreme vacuum level of -0.098 MPa.
Reliable processing accuracy
Core components are processed by Japanese imported processing equipment, with an accuracy of 0.001 mm.
Fast pumping speed
The 2BE water ring vacuum pump has a single-stage structure, low energy consumption, and a large pumping capacity. The pumping speed range is 5 - 635 m3/min.
High efficiency and low energy consumption
The flexible exhaust design, single-stage impeller structure, and imported technology enable the 2BE water ring vacuum pump to save 20% energy when in use.
Strict assembly process
Strict control of assembly process ensures that the impeller and disc of the 2BE water ring vacuum pump maintain a 0.2 mm gap, ensuring the maximum performance of the pumping speed and extreme vacuum level.
Long service life
The designed service life is 20 years. Different materials of 2BE water ring vacuum pumps can be selected based on the pumping medium, such as carbon steel, stainless steel 304, 316L, 904L, 2205, 2507, etc.
Equipped with explosion-proof motors
Equipped with explosion-proof motors, capable of extracting explosive gases, and working in various flammable and explosive environments.
5 times longer than ordinary materials in service life
The shaft sleeve, the most easily damaged part, is all made of stainless steel by our company, which is 5 times longer than ordinary materials in service life.
effectively reduces noise
Efficient top-mounted gas-water separation structure not only saves space but also effectively reduces noise and working current.
Suitable for harsh working conditions with high moisture content and large load impact fluctuations.
Suitable for harsh working conditions with high moisture content and large load impact fluctuations.
ISO9001 quality management system certification
Independently produced and manufactured, with over 40 vacuum-related patents, rated as a national-level high-tech enterprise and a science and technology enterprise, and has passed ISO9001 quality management system certification.
be used for recovering the pumped solvent
Can be made into air-cooled water ring vacuum pump units and closed-loop water ring vacuum pump units, allowing the working fluid to be recycled, reducing wastewater discharge, and using organic solvents as the working fluid, or it can be used for recovering the pumped solvent.
Long-lasting
As the core component of the non-rotating water ring vacuum pump, the impellers are all made of ductile iron QT400 or welded steel plates, fully ensuring the stability of the 2BE water ring vacuum pump impellers under various harsh working conditions. The pump body is also all made of welded steel plates, significantly increasing the service life of the 2BE vacuum pump.
Non-rotating vacuum pump customer cases
Tsinghua University, Wanguang Food, Hainan Coconut Tree, Coca-Cola, Fuyao Glass Industrial Group, Longliqi Industrial, Adolph Cosmetics, Changhong Chemicals, Chengdu Aircraft, China National Petroleum, Hengyi Caprolactam, Yu Feng New Materials, Asia Pharmaceutical Group, Xintianyuan Pharmaceutical, Yue Kang Pharmaceutical Group, Deliangfang Pharmaceutical, Yanjing Beer, Baiwei Beer, Chinese Academy of Sciences, Huayuan New Energy, Zunxin Innovation Energy, etc., 200+ specialized industries, 10,000+ customers. The top in multiple industries are using non-rotating vacuum pumps.
Product Parameters
|
Mode |
Power KW |
Maximum exhaust volume m3/min |
Pump speed r.p.m |
Transmission method |
Limit vacuum level |
Intake and exhaust pipe diameters |
|
2BE1 103 |
11 |
5.8 |
1450 |
Direct connection |
-0.098MPa (3300Pa) |
DN65 |
|
2BE1 153 |
18.5 |
10 |
1450 |
Direct connection |
DN100 |
|
|
2BE1 202 |
22 |
12.7 |
980 |
Direct connection |
DN125 |
|
|
2BE1 203 |
37 |
18.7 |
980 |
Direct connection |
DN125 |
|
|
2BE1 252 |
30 |
20 |
558 |
V-belt |
DN150 |
|
|
37 |
25 |
660 |
V-belt |
|||
|
45 |
28.3 |
740 |
Direct connection |
|||
|
55 |
30.8 |
832 |
V-belt |
|||
|
2BE1 253 |
45 |
29.2 |
560 |
V-belt |
DN150 |
|
|
55 |
35.7 |
660 |
V-belt |
|||
|
75 |
40.8 |
740 |
Direct connection |
|||
|
90 |
47.8 |
885 |
V-belt |
|||
|
2BE1 303 |
55 |
43 |
466 |
V-belt |
DN200 |
|
|
75 |
53.3 |
590 |
Direct connection |
|||
|
90 |
60 |
660 |
V-belt |
|||
|
110 |
66.7 |
740 |
Direct connection |
|||
|
2BE1 353 |
75 |
59.7 |
390 |
V-belt |
DN200 |
|
|
90 |
61.7 |
415 |
V-belt |
|||
|
110 |
68.3 |
464 |
V-belt |
|||
|
132 |
77 |
520 |
V-belt |
|||
|
160 |
88.3 |
590 |
Direct connection |
|||
|
2BE1 403 |
132 |
95 |
372 |
V-belt |
DN300 |
|
|
160 |
108 |
420 |
V-belt |
|||
|
200 |
123 |
472 |
V-belt |
Note: 1. The performance parameters listed in the table were obtained under the conditions of saturated air as the intake medium at 20℃, working fluid temperature at 15℃, and exhaust pressure at 1013 mbar.
2. The performance tolerance is ±10%.
3. The selected motor power can operate under most working conditions. If the exhaust port pressure is high (0.02 - 0.05 MPa), the motor power should be increased accordingly; if the shaft power of the 2BE1 vacuum pump is relatively low when it is operating normally, a motor power closer to the shaft power can be selected, which is more energy-efficient.
|
model |
Power KW |
Maximum exhaust volume m3/min |
Pump speed r.p.m |
Transmission method |
Limit vacuum level |
Intake and exhaust pipe diameters |
|
2BE3 400 |
75 |
68 |
300 |
V-belt |
-0.085MPa (16000Pa) |
DN300 |
|
90 |
80 |
323 |
V-belt |
|||
|
110 |
94 |
390 |
V-belt |
|||
|
132 |
110 |
449 |
V-belt |
|||
|
2BE3 420 |
110 |
90 |
300 |
V-belt |
DN300 |
|
|
132 |
120 |
360 |
V-belt |
|||
|
160 |
128 |
390 |
V-belt |
|||
|
185 |
143 |
440 |
V-belt |
|||
|
2BE3 500 |
132 |
125 |
242 |
V-belt |
DN350 |
|
|
160 |
145 |
260 |
V-belt |
|||
|
200 |
169 |
300 |
V-belt |
|||
|
250 |
190 |
340 |
V-belt |
|||
|
2BE3 520 |
185 |
150 |
236 |
V-belt |
DN350 |
|
|
200 |
178 |
260 |
V-belt |
|||
|
250 |
205 |
300 |
V-belt |
|||
|
280 |
235 |
336 |
V-belt |
|||
|
2BE3 600 |
185 |
180 |
200 |
Reducer |
DN400 |
|
|
250 |
210 |
236 |
||||
|
280 |
240 |
266 |
||||
|
315 |
260 |
294 |
||||
|
350 |
285 |
336 |
||||
|
2BE3 620 |
220 |
220 |
200 |
Reducer |
DN400 |
|
|
280 |
255 |
236 |
||||
|
350 |
290 |
266 |
||||
|
400 |
320 |
294 |
||||
|
450 |
360 |
336 |
||||
|
2BE3 670 |
315 |
305 |
170 |
Reducer |
DN500 |
|
|
450 |
370 |
200 |
||||
|
560 |
440 |
236 |
||||
|
630 |
500 |
266 |
||||
|
800 |
560 |
294 |
||||
|
2BE3 720 |
400 |
365 |
190 |
Reducer |
DN500 |
|
|
450 |
405 |
210 |
||||
|
560 |
458 |
240 |
||||
|
630 |
509 |
270 |
||||
|
710 |
563 |
300 |
||||
|
900 |
635 |
340 |
Note: 1. The selected motor power in the table can operate under most working conditions. If the exhaust port pressure is high, the motor power should be increased accordingly; if the actual working pressure of the 2BE3 vacuum pump corresponds to a lower shaft power, a motor power closer to the shaft power can be selected for greater energy savings.
2. The rotational speed of the vacuum pump is a reference speed. The actual rotational speed is determined based on the transmission method and customer requirements.
3. The 2BE3 vacuum pumps above 500 can be driven by either belt drive or reducer drive.





















