Vacuum Discharge Pumps
The working principle of the vacuum discharge pump is very simple.
It uses mechanical or diffusion methods to extract gas and create a low-pressure environment to allow the gas to flow.
The technical level of vacuum discharge pumps continues to improve, especially in the fields of high pressure and high temperature applications.

Advantages of vacuum discharge pump:
1. High vacuum extraction capacity: The special gear vacuum discharge pump for molecular distillation is designed to meet the discharge requirements under high vacuum conditions and has very strong vacuum extraction capacity.
2. Wide range of applications: This pump is suitable for a variety of industries, including fine chemicals, medicine, biological preparations, organic purification and extraction, grain and oil processing, and waste oil regeneration. Especially in the waste oil regeneration industry, the successful development of the HVP vacuum distillation vacuum discharge pump has made a revolutionary breakthrough in the waste oil regeneration process, greatly improving oil quality, improving production efficiency, and reducing production costs
3. Smooth operation: simple structure, uniform flow without pulsation
4. High processing precision

Main Application of vacuum discharge pump:
Chemical Industry: Vacuum discharge in processes such as vacuum distillation, molecular distillation, and thin-film evaporation; conveying solvents, resins, intermediates, etc.
Pharmaceutical Industry: Vacuum concentration and purification processes in biopharmaceuticals; conveying pharmaceutical solutions, extracts, and other materials requiring aseptic and precise transport.
Food and Grain Processing: Oil refining, phospholipid extraction, vacuum deodorization, and other processes; conveying edible oils, phospholipids, food additives, etc.
Environmental Protection and Recycling: Material conveying under negative pressure conditions, such as lubricating oil distillation regeneration and waste oil recycling.
Fine Chemicals: Vacuum discharge and metering feeding in industries such as fragrances, coatings, and adhesives.

FAQ
1. Q: Can the pump be used to transport water?
A: Generally, it is not recommended for transporting water. Gear pumps rely on lubricating fluids, and fluids lacking lubrication, such as water, can cause accelerated wear on internal components like gears, affecting pump performance and lifespan.
2. Q: What is the viscosity range the pump can handle?
A: Different pump models handle different viscosity ranges. Generally, vacuum discharge gear metering pumps can handle fluids with viscosities up to approximately 1,000,000,000 cps.
3. Q: How is the pump driven?
A: The pump is electrically driven.

|
type |
Single rotation displacement(cc/rev) |
Rated flow rate at maximum speed(L/min) |
Maximum speed (rpm) |
Inlet/outlet dimension |
|
CS55 |
0.55 |
0.8 |
1500 |
G1/4" |
|
CS79 |
0.79 |
1.1 |
1500 |
G3/8" |
|
CS110 |
1.10 |
1.6 |
1500 |
G3/8" |
|
CS158 |
1.58 |
2.3 |
1500 |
G1/2" |
|
CS253 |
2.53 |
3.7 |
1500 |
G1/2" |
|
CS348 |
3.48 |
5.2 |
1500 |
G1/2" |
|
CS475 |
4.75 |
7.0 |
1500 |
G1/2" |
|
CS712 |
7.12 |
10.6 |
1500 |
G1/2" |
|
CS950 |
9.50 |
14.0 |
1500 |
G1/2" |
|
CM142 |
14.2 |
21.0 |
1500 |
G1/2" |
|
CM214 |
21.4 |
32.0 |
1500 |
G3/4'' |
|
CM320 |
32.0 |
48.0 |
1500 |
G1" |
|
CM481 |
48.1 |
47.0 |
980 |
G1" |
|
CM600 |
60.0 |
58.0 |
980 |
G1 1/4" |
|
CM800 |
80.0 |
78.0 |
980 |
G1 1/4" |
|
CL108 |
108.0 |
105.0 |
980 |
G1 1/2" |
|
CL160 |
160.0 |
115.0 |
720 |
flange φ50 |
|
CL240 |
240.0 |
172.0 |
720 |
flange φ50 |
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