(a)We Eurostars have 3 kinds of air cooled condensers:Â
(1)Standard side air discharge type;(2)"V"top air discharge type;(3)"V" spray water type.
Main specifcation as following:
Frame and cabinet apply steel plate with plastic spray,corrosion proof and good-looking appearance.
The coil apply staggered copper pipes and mechanically expanded pipes with aluminum fins to guarantee good heat transfer performance.
2.8MPa gas pressure tested and pollution be cleared before delivery.
Suilable for refrigeration of R22,R404A,R134a,R407C etc.
(b)condenser specification:
Â
Heat Exchanger(Condenser) | ||||||||||||||
Mdel | Capacity | Area | Fan spec. | Connection pipe | ||||||||||
Power input | Dia. | Air flow | Voltage | |||||||||||
kw | w | mm | CMH | V | in | out | ||||||||
ESHECS0.7 | 0.7 | 2.20 | 1×40 | 200 | 410 | 220 | Φ10 | Φ10 | ||||||
ESHECS1.1 | 1.1 | 3.60 | 1×40 | 200 | 410 | 220 | Φ12 | Φ12 | ||||||
ESHECS1.4 | 1.4 | 4.60 | 1×60 | 250 | 750 | 220 | Φ12 | Φ12 | ||||||
ESHECS1.7 | 1.7 | 5.60 | 1×75 | 300 | 1350 | 220 | Φ12 | Φ12 | ||||||
ESHECS2.1 | 2.1 | 7.20 | 1×90 | 300 | 1350 | 220 | Φ12 | Φ12 | ||||||
ESHECS2.4 | 2.4 | 8.60 | 1×150 | 350 | 3100 | 380 | Φ16 | Φ12 | ||||||
ESHECS3.6 | 3.6 | 11.70 | 1×150 | 350 | 3100 | 380 | Φ16 | Φ12 | ||||||
ESHECS4.5 | 4.5 | 15.20 | 1×150 | 350 | 3100 | 380 | Φ16 | Φ12 | ||||||
ESHECS5.3 | 5.3 | 18.20 | 1×180 | 400 | 4500 | 380 | Φ19 | Φ16 | ||||||
ESHECS6.5 | 6.5 | 22.20 | 1×180 | 400 | 4500 | 380 | Φ19 | Φ16 | ||||||
ESHECS8.2 | 8.2 | 25.20 | 1×180 | 400 | 4500 | 380 | Φ19 | Φ16 | ||||||
ESHECS6.2 | 6.2 | 21.20 | 2×90 | 300 | 2700 | 220 | Φ16 | Φ12 | ||||||
ESHECS8.3 | 8.3 | 28.20 | 2×150 | 350 | 6200 | 380 | Φ19 | Φ16 | ||||||
ESHECS11.3 | 11.3 | 33.20 | 2×150 | 350 | 6200 | 380 | Φ19 | Φ16 | ||||||
ESHECS12.7 | 12.7 | 36.20 | 2×180 | 400 | 9000 | 380 | Φ19 | Φ16 | ||||||
ESHECS014.9 | 14.9 | 43.20 | 2×180 | 400 | 9000 | 380 | Φ22 | Φ16 | ||||||
ESHECS17.6 | 17.6 | 48.20 | 2×180 | 400 | 9000 | 380 | Φ22 | Φ16 | ||||||
ESHECS19.3 | 19.3 | 55.20 | 2×180 | 400 | 9000 | 380 | Φ22 | Φ19 | ||||||
ESHECS20.6 | 20.6 | 70.20 | 2×250 | 450 | 10360 | 380 | Φ28 | Φ19 | ||||||
ESHECS24.5 | 24.5 | 80.20 | 2×250 | 450 | 10360 | 380 | Φ28 | Φ19 | ||||||
ESHECS29.7 | 29.7 | 100.20 | 4×180 | 400 | 18000 | 380 | Φ28 | Φ22 | ||||||
ESHECS38.3 | 38.3 | 130.20 | 4×180 | 400 | 18000 | 380 | Φ28 | Φ22 | ||||||
ESHECS47.3 | 47.3 | 150.20 | 4×180 | 400 | 18000 | 380 | Φ28 | Φ22 | ||||||
ESHECS54.1 | 54.1 | 180.20 | 4×180 | 400 | 18000 | 380 | Φ35 | Φ22 |
A hydraulic motor is a mechanical actuator that converts hydraulic pressure and flow into torque and angular displacement (rotation). The hydraulic motor is the rotary counterpart of the hydraulic cylinder as a linear actuator. Most broadly, the category of devices called hydraulic motors has sometimes included those that run on hydropower (namely, water engines and water motors) but in today's terminology the name usually refers more specifically to motors that use hydraulic fluid as part of closed hydraulic circuits in modern hydraulic machinery.
Conceptually, a hydraulic motor should be interchangeable with a hydraulic pump because it performs the opposite function - similar to the way a DC electric motor is theoretically interchangeable with a DC electrical generator. However, many hydraulic pumps cannot be used as hydraulic motors because they cannot be backdriven. Also, a hydraulic motor is usually designed for working pressure at both sides of the motor, whereas most hydraulic pumps rely on low pressure provided from the reservoir at the input side and would leak fluid when abused as a motor.
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