Air/Water Cooling Air Compressor Wholesale for Plastics
Mechanical machining is a manufacturing process that involves the use of machine tools to shape and remove material from a workpiece to achieve the desired shape and dimensions. It is commonly used in various industries, such as automotive, aerospace, and metal fabrication. Mechanical Machining,Mechanical Engineering Machining,Metal Machining Techniques,Mechanical Engineering Parts Dandong Haichuan Machinery Co., Ltd. , https://www.ddhccasting.com
1. One-piece Shaft of the Permanent Magnet Motor and Air End
★ The rotor of the permanent magnet motor is directly sleeved on the shaft of the air end, with an integrated direct-connecting structure, eliminating couplings or gears, ensuring 100% transmission efficiency.
★ Taper connection is used for the motor, making assembly and disassembly simple.
2. Permanent Magnet Frequency Conversion Electric Motor
★ The permanent magnet frequency conversion motor is the most advanced type, with an efficiency up to 97%, saving more energy compared to ordinary motors with frequency conversion devices by 3%-5%.
★ High-temperature resistant rare earth magnets are used in the motor, ensuring no demagnetization. No bearings or sleeves needed, eliminating the need for lubricating grease and alignment concerns. Compact design saves space and simplifies maintenance.
3. Wide Frequency Range, Constant Pressure Air Supply
★ A wide frequency range (0HZ-200HZ) ensures consistent motor efficiency under different loads.
★ Strong torque and adaptability with load startup capability.
★ Full machine operation in frequency conversion mode allows pressure regulation according to client needs, achieving high efficiency and energy savings.
4. Stable and Reliable Operation
★ Starts in frequency conversion mode, reducing grid impact and avoiding damage to electrical equipment, saving energy during start-up.
★ No need to set upper and lower pressure limits; operate by adjusting frequency at the set pressure point to stabilize pressure, saving 10%-15% energy.
5. Significant Energy Savings
Compared to fixed-speed compressors, our permanent magnet frequency conversion compressor can save 30% energy. Compared to ordinary motor and frequency conversion compressors, it can save 5%-10%.
Advantages of the Whole Air Compressor Unit:
1. Approved by ISO9001, SGS, CE, and other certifications.
2. Uses world-renowned twin-screw air ends, offering high efficiency, reliability, and long service life.
3. Equipped with high-precision filters and separators, ensuring compressed air oil content under 3ppm, meeting international standards.
4. Features the latest air control system, combining intake valve, intelligent control, and pressure sensors for flexible air capacity control.
5. Intelligent microcomputer control system with bilingual interface, fault display, alarm, and automatic shutdown.
6. Uses high-quality components from renowned brands like UK APD oil filter, American AMOT temperature control valve, and Schneider electric parts, ensuring high efficiency and long service life.
Technical Parameters of This Single Stage Twin-Screw Air Compressor:
Model
Exhaust Pressure (Mpa)
Air Displacement (m3/min)
Power (Kw)
Noise (dBa)
Dimensions (mm)
Outlet Pipe Size
Weight (Kg)
TKLYC-7F
0.7/0.8/1.0
1.23/1.16/1.02
7.5
65±3
840*670*925
G3/4
350
TKLYC-11F
0.7/0.8/1.0
1.65/1.62/1.4
7.5
65±3
1000*820*1145
G3/4
390
TKLYC-15F
0.7/0.8/1.0
2.65/2.24/2.1
15
65±3
1300*850*1257
G1
410
TKLYC-18F
0.7/0.8/1.0
3.1/3.0/2.7
18.5
65±3
1300*850*1257
G1
440
TKLYC-22F
0.7/0.8/1.0
3.8/3.7/3.3
22
65±3
1300*850*1258
G1
650
TKLYC-30F
0.7/0.8/1.0
5.3/5.1/4.5
30
68±3
1600*1100*1430
G1 1/2
800
TKLYC-37F
0.7/0.8/1.0
6.7/6.5/5.7
37
68±3
1600*1100*1430
G1 1/2
850
TKLYC-45F
0.7/0.8/1.0
8.6/8.0/7.1
45
68±3
1600*1100*1430
G1 1/2
900
TKLYC-55F
0.7/0.8/1.0
10.3/10.1/9.3
55
72±3
1750*1150*1500
DN50
1650
TKLYC-75F
0.7/0.8/1.0
14.0/13.5/12.5
75
72±3
1750*1150*1500
DN50
1800
TKLYC-90F
0.7/0.8/1.0
17.2/15.9/14.0
90
72±3
2000*1150*1680
DN50
1950
TKLYC-110F
0.7/0.8/1.0
21.4/19.9/18.1
110
73±3
2300*1540*1900
DN80
2500
Mechanical Machining
Machining is the process used to remove material, typically metal, to create parts for machines, tools, transportation, and more. Machine shops and machinists use equipment like lathes, mills, and drill presses to turn material into useful tools using precise cuts.